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FXR1的液-液相分离通过激活储存mRNA的翻译来驱动精子发生。

LLPS of FXR1 drives spermiogenesis by activating translation of stored mRNAs.

作者信息

Kang Jun-Yan, Wen Ze, Pan Duo, Zhang Yuhan, Li Qing, Zhong Ai, Yu Xinghai, Wu Yi-Chen, Chen Yu, Zhang Xiangzheng, Kou Peng-Cheng, Geng Junlan, Wang Ying-Yi, Hua Min-Min, Zong Ruiting, Li Biao, Shi Hui-Juan, Li Dangsheng, Fu Xiang-Dong, Li Jinsong, Nelson David L, Guo Xuejiang, Zhou Yu, Gou Lan-Tao, Huang Ying, Liu Mo-Fang

机构信息

State Key Laboratory of Molecular Biology, State Key Laboratory of Cell Biology, Shanghai Key Laboratory of Molecular Andrology, Shanghai Institute of Biochemistry and Cell Biology, Center for Excellence in Molecular Cell Science, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai, China.

Shanghai Key Laboratory of Biliary Tract Disease Research, Shanghai Research Center of Biliary Tract Disease, Department of General Surgery, Xinhua Hospital, affiliated with Shanghai Jiao Tong University School of Medicine, Shanghai, China.

出版信息

Science. 2022 Aug 12;377(6607):eabj6647. doi: 10.1126/science.abj6647.

Abstract

Postmeiotic spermatids use a unique strategy to coordinate gene expression with morphological transformation, in which transcription and translation take place at separate developmental stages, but how mRNAs stored as translationally inert messenger ribonucleoproteins in developing spermatids become activated remains largely unknown. Here, we report that the RNA binding protein FXR1, a member of the fragile X-related (FXR) family, is highly expressed in late spermatids and undergoes liquid-liquid phase separation (LLPS) to merge messenger ribonucleoprotein granules with the translation machinery to convert stored mRNAs into a translationally activated state. Germline-specific ablation in mice impaired the translation of target mRNAs and caused defective spermatid development and male infertility, and a phase separation-deficient FXR1 mutation in knock-in mice produced the same developmental defect. These findings uncover a mechanism for translational reprogramming with LLPS as a key driver in spermiogenesis.

摘要

减数分裂后的精子细胞采用一种独特的策略来协调基因表达与形态转变,其中转录和翻译发生在不同的发育阶段,但在发育中的精子细胞中作为翻译惰性信使核糖核蛋白储存的mRNA如何被激活仍 largely未知。在这里,我们报告RNA结合蛋白FXR1,一种脆性X相关(FXR)家族的成员,在晚期精子细胞中高度表达,并经历液-液相分离(LLPS)以将信使核糖核蛋白颗粒与翻译机制合并,从而将储存的mRNA转化为翻译激活状态。小鼠种系特异性消融损害了靶mRNA的翻译,并导致精子细胞发育缺陷和雄性不育,而敲入小鼠中的相分离缺陷FXR1突变产生了相同的发育缺陷。这些发现揭示了一种以LLPS为精子发生关键驱动因素的翻译重编程机制。

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